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Synthesis and photocatalytic performances of BiVO4 by ammonia co-precipitation process

机译:氨共沉淀法合成BiVO4及其光催化性能

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This paper reports the preparation and photocatalytic performance of Bismuth vanadate (BiVO4) by a facile and inexpensive approach. An amorphous BiVO4 was first prepared by a co-precipitation process from aqueous solutions of Bi(NO3)(3) and NH4VO3 using ammonia. Followed by heating treatment at various temperatures, the amorphous phase converted to crystalline BiVO4 with a structure between monoclinic and tetragonal scheelite. The crystallization of BiVO4 occurred at about 523 K, while the nanocrystalline BiVO4 were formed with a heat-treatment of lower than 673 K. However, when the heat-treatment was carried out at 773 K, the accumulation of nanocrystals to bulk particles was observed. The photocatalytic performances of the materials were investigated by O-2 evolution under visible-light, and MB decomposition under solar simulator. The results demonstrated that the crystalline structure is still the vital factor for the activities of both reactions. However, the crystallinity of BiVO4 gives a major influence on the activity of O-2 evolution, whereas the surface area, plays an important role for photocatalytic MB decomposition. (C) 2008 Elsevier Inc. All rights reserved.
机译:本文报道了一种简便易行的方法制备钒酸铋(BiVO4)的制备及其光催化性能。首先通过共沉淀工艺使用氨从Bi(NO3)(3)和NH4VO3的水溶液中共沉淀出非晶态BiVO4。随后在不同温度下进行热处理,非晶相转变为晶体BiVO4,其结构介于单斜晶和四方白钨矿之间。 BiVO4的结晶发生在约523 K,而纳米晶体BiVO4的热处理低于673K。但是,当热处理在773 K进行时,观察到纳米晶体向大颗粒的聚集。 。通过在可见光下O-2析出和在太阳模拟器下MB分解来研究材料的光催化性能。结果表明,晶体结构仍然是两个反应活动的重要因素。然而,BiVO4的结晶度对O-2析出的活性有重大影响,而表面积则对光催化MB分解起着重要作用。 (C)2008 Elsevier Inc.保留所有权利。

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